Review of DNA repair enzymes in bacteria: With a major focus on AddAB and RecBCD

IF 3 3区 生物学 Q2 GENETICS & HEREDITY
Bing-Bing Wang, Jian-Zhong Xu , Feng Zhang, Shuai Liu, Jie Liu, Wei-Guo Zhang
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引用次数: 1

Abstract

DNA recombination repair systems are essential for organisms to maintain genomic stability. In recent years, we have improved our understanding of the mechanisms of RecBCD/AddAB family-mediated DNA double-strand break repair. In E. coli, it is RecBCD that plays a central role, and in Firmicute Bacillus subtilis it is the AddAB complex that functions. However, there are open questions about the mechanism of DNA repair in bacteria. For example, how bacteria containing crossover hotspot instigator (Chi) sites regulate the activity of proteins. In addition, we still do not know the exact process by which the RecB nuclease or AddA nuclease structural domains load RecA onto DNA. We also know little about the mechanism of DNA repair in the industrially important production bacterium Corynebacterium glutamicum (C. glutamicum). Therefore, exploring DNA repair mechanisms in bacteria may not only deepen our understanding of the DNA repair process in this species but also guide us in the targeted treatment of diseases associated with recombination defects, such as cancer. In this paper, we firstly review the classical proteins RecBCD and AddAB involved in DNA recombination repair, secondly focus on the novel helical nuclease AdnAB found in the genus Mycobacterium.

细菌中DNA修复酶的研究进展:重点是AddAB和RecBCD
DNA重组修复系统是生物体维持基因组稳定所必需的。近年来,我们对RecBCD/AddAB家族介导的DNA双链断裂修复机制的认识有所提高。在大肠杆菌中,RecBCD起核心作用,而在枯草厚壁芽孢杆菌中,AddAB复合物起作用。然而,关于细菌DNA修复的机制还存在一些悬而未决的问题。例如,含有交叉热点启动子(Chi)位点的细菌如何调节蛋白质的活性。此外,我们仍然不知道RecB核酸酶或AddA核酸酶结构域将RecA装载到DNA上的确切过程。我们对工业上重要的生产细菌谷氨酸棒状杆菌(C. glutamicum)的DNA修复机制也知之甚少。因此,探索细菌的DNA修复机制不仅可以加深我们对该物种DNA修复过程的理解,还可以指导我们有针对性地治疗与重组缺陷相关的疾病,如癌症。本文首先综述了参与DNA重组修复的经典蛋白RecBCD和AddAB,然后重点介绍了在分枝杆菌属中发现的新型螺旋核酸酶AdnAB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
DNA Repair
DNA Repair 生物-毒理学
CiteScore
7.60
自引率
5.30%
发文量
91
审稿时长
59 days
期刊介绍: DNA Repair provides a forum for the comprehensive coverage of DNA repair and cellular responses to DNA damage. The journal publishes original observations on genetic, cellular, biochemical, structural and molecular aspects of DNA repair, mutagenesis, cell cycle regulation, apoptosis and other biological responses in cells exposed to genomic insult, as well as their relationship to human disease. DNA Repair publishes full-length research articles, brief reports on research, and reviews. The journal welcomes articles describing databases, methods and new technologies supporting research on DNA repair and responses to DNA damage. Letters to the Editor, hot topics and classics in DNA repair, historical reflections, book reviews and meeting reports also will be considered for publication.
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